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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Subwavelength metallic coaxial waveguides in the optical range: Role of the plasmonic modes
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Subwavelength metallic coaxial waveguides in the optical range: Role of the plasmonic modes

机译:光学范围内的亚波长金属同轴波导:等离激元模的作用

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摘要

A theoretical investigation is presented of the mode propagation and attenuation in a nanometric coaxial waveguide in real metal. By a rapid comparison with other structures, it is established that a coaxial waveguide has propagative modes with very interesting properties: the cutoff wavelengths are very large, they become larger when a perfectly electric conductor is replaced by gold or silver (real metal), and they can be increased when the outer and inner radii are very close one to other. By studying dispersion curves and field structures, it is shown that surface plasmon modes are responsible for these properties. By simply changing the geometrical parameters of the structure, a very large effective index and very low group velocities could be obtained. We also establish that, in spite of the metal losses, a reasonable large propagation length could be obtained (50 μm) which should allow applications for guiding light in nano-optics.
机译:对真实金属中的纳米同轴波导中的模式传播和衰减进行了理论研究。通过与其他结构的快速比较,可以确定同轴波导具有具有非常有趣特性的传播模式:截止波长非常大,当用金或银(真实金属)代替完美的电导体时,它们会变大,并且当外半径和内半径彼此非常接近时,可以增加它们。通过研究色散曲线和场结构,表明表面等离激元模式负责这些特性。通过简单地改变结构的几何参数,可以获得非常大的有效指数和非常低的群速度。我们还确定,尽管存在金属损耗,但仍可以获得合理的较大传播长度(50μm),这应允许在纳米光学系统中引导光。

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